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Targeted Apoptosis Activation with GrB/scFvMEL Modulates Melanoma Growth, Metastatic Spread, Chemosensitivity, and Radiosensitivity1

机译:用GrB / scFvMEL靶向靶向激活细胞凋亡可调节黑色素瘤的生长,转移扩散,化学敏感性和放射敏感性1

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摘要

GrB/scFvMEL, a fusion protein composed of human granzyme B (GrB) and the single-chain antibody scFvMEL, targets melanoma gp240 antigen and exerts impressive cytotoxic effects by inducing apoptosis. We evaluated the effects of GrB/scFvMEL on chemotherapy, radiation therapy, metastasis in vitro, and the growth of human melanoma A375 xenograft tumors in nude mice. GrB/scFvMEL showed synergistic cytotoxicity when coadministered with doxorubicin, vincristine or cisplatin, and additive effects, in combination with etoposide or cytarabine. Optimal cytotoxic effects were obtained when cells were treated first with GrB/scFvMEL followed by exposure to the agent (rather than the reverse). Pretreatment of A375 cells with GrB/scFvMEL significantly sensitized melanoma cells to ionizing radiation assessed using a clonogenic survival assay. Subtoxic doses of GrB/scFvMEL inhibited the invasion of A375 cells into Matrigel. GrB/scFvMEL (37.5 mg/kg) was administered intravenously to nude mice bearing A375 tumors. Saline-treated tumors increased 24-fold, whereas tumors treated with GrB/scFvMEL showed a significant tumor growth delay increasing four-fold. Tumor tissue displayed an increase in apoptotic nuclei compared to control. Thus, the targeted delivery of GrB to tumors may have a significant potential for cancer treatment. Targeted therapeutic agents specifically designed to impact cellular apoptotic pathways may represent a novel class of therapeutic agents.
机译:GrB / scFvMEL是一种由人粒酶B(GrB)和单链抗体scFvMEL组成的融合蛋白,它靶向黑色素瘤gp240抗原,并通过诱导细胞凋亡发挥令人印象深刻的细胞毒性作用。我们评估了GrB / scFvMEL对裸鼠体内化学疗法,放射疗法,体外转移以及人黑素瘤A375异种移植肿瘤生长的影响。当与阿霉素,长春新碱或顺铂并用时,GrB / scFvMEL与依托泊苷或阿糖胞苷合用时显示协同的细胞毒性。当先用GrB / scFvMEL处理细胞,然后将其暴露于药剂(而不是相反)时,可获得最佳的细胞毒性作用。用克隆形成存活测定法评估,用GrB / scFvMEL预处理A375细胞可使黑素瘤细胞对电离辐射敏感。亚毒性剂量的GrB / scFvMEL抑制了A375细胞侵入基质胶。将GrB / scFvMEL(37.5 mg / kg)静脉内给予患有A375肿瘤的裸鼠。盐水处理的肿瘤增加了24倍,而用GrB / scFvMEL处理的肿瘤显示出显着的肿瘤生长延迟增加了4倍。与对照相比,肿瘤组织显示出凋亡核的增加。因此,将GrB靶向递送至肿瘤可能具有治疗癌症的巨大潜力。专为影响细胞凋亡途径而设计的靶向治疗剂可以代表一类新型的治疗剂。

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